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用于超级电容器电极的钴配合物和聚吡咯薄膜的同步电化学沉积

Simultaneous Electrochemical Deposition of Cobalt Complex and Poly(pyrrole) Thin Films for Supercapacitor Electrodes.

作者信息

Parnell Charlette M, Chhetri Bijay P, Mitchell Travis B, Watanabe Fumiya, Kannarpady Ganesh, RanguMagar Ambar B, Zhou Huajun, Alghazali Karrer M, Biris Alexandru S, Ghosh Anindya

机构信息

Department of Chemistry, University of Arkansas at Little Rock, 2801 South University Avenue, Little Rock, AR, 72204, USA.

Center for Integrative Nanotechnology Sciences, University of Arkansas at Little Rock, 2801 South University Avenue, Little Rock, AR, 72204, USA.

出版信息

Sci Rep. 2019 Apr 4;9(1):5650. doi: 10.1038/s41598-019-41969-6.

Abstract

Supercapacitors are beneficial as energy storage devices and can obtain high capacitance values greater than conventional capacitors and high power densities compared to batteries. However, in order to improve upon the overall cost, energy density, and charge-discharge rates, the electrode material of supercapacitors needs to be fine-tuned with an inexpensive, high conducting source. We prepared a Co(III) complex and polypyrrole (PPy) composite thin films (CoN-PPy) that was electrochemically deposited on the surface of a glassy carbon working electrode. Cyclic voltammetry studies indicate the superior performance of CoN-PPy in charge storage in acidic electrolyte compared to alkaline and organic solutions. The CoN-PPy material generated the highest amount of specific capacitance (up to 721.9 F/g) followed by Co salt and PPy (Co-PPy) material and PPy alone. Cyclic performance studies showed the excellent electrochemical stability of the CoN-PPy film in the acidic medium. Simply electrochemically depositing an inexpensive Co(III) complex with a high electrically conducting polymer of PPy delivered a superior electrode material for supercapacitor applications. Therefore, the results indicate that novel thin films derived from Co(III) metal complex and PPy can store a large amount of energy and maintain high stability over many cycles, revealing its excellent potential in supercapacitor devices.

摘要

超级电容器作为能量存储设备具有诸多优势,与传统电容器相比,它能够获得更高的电容值,与电池相比则具有更高的功率密度。然而,为了在总体成本、能量密度和充放电速率方面有所改进,超级电容器的电极材料需要用一种廉价、高导电的材料进行微调。我们制备了一种钴(III)配合物与聚吡咯(PPy)的复合薄膜(CoN-PPy),该薄膜通过电化学沉积在玻碳工作电极表面。循环伏安法研究表明,与碱性和有机溶液相比,CoN-PPy在酸性电解质中的电荷存储性能更优。CoN-PPy材料产生的比电容最高(高达721.9 F/g),其次是钴盐和PPy(Co-PPy)材料以及单独的PPy。循环性能研究表明,CoN-PPy薄膜在酸性介质中具有出色的电化学稳定性。简单地将一种廉价的钴(III)配合物与高导电聚合物PPy进行电化学沉积,就能得到一种用于超级电容器应用的优质电极材料。因此,结果表明,由钴(III)金属配合物和PPy衍生的新型薄膜能够存储大量能量,并在多个循环中保持高稳定性,这揭示了其在超级电容器器件中的巨大潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/56aa/6449390/13b05942e5f8/41598_2019_41969_Fig1_HTML.jpg

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